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Mancozeb-induced genotoxicity and apoptosis in cultured human lymphocytes
Amit Kumar Srivastava1, Wahid Ali, Richa Singh
1Proteomics Laboratory, Indian Institute of Toxicology Research (CSIR), P.O. Box 80, M.G. Marg, Lucknow, UP 226001, India.
Aims:
Mancozeb is a dithiocarbamate fungicide known to be genotoxic and induces tumors in rodents at various sites. There is no report in the literature about its genotoxicity in humans. Here, we investigated the association between mancozeb exposure and induction of genotoxic and proapoptotic changes in cultured human lymphocytes (CHLs).
Main Methods:
Lymphocytes were isolated from peripheral blood of healthy non-smoking donors. Induction of micronuclei and chromosomal aberrations was recorded both by conventional and flow cytometric methods. Annexin-V FITC was used for the differentiation of apoptotic and necrotic cells by flow cytometry.
Key Findings:
Mancozeb exposure (0.5, 2 and 5 μg/ml) to CHLs leads to significant induction in the frequency of chromosomal aberrations (CAs) and micronuclei (MN), in a dose-dependent manner. Concomitantly, pro-oxidant potential of mancozeb was also recorded, by increase in the levels of reactive oxygen species (ROS) generation. Our results demonstrated that ROS plays a critical role in the initiation of mancozeb induced apoptosis in CHLs through two ways, primarily through mitochondria-mediated pathway including induction of ROS, decrease in mitochondrial membrane potential (ΔΨm), along with cytochrome c release from mitochondria, and activation of the caspase cascade. The other pathway includes increase in ROS, which resulted in activation of NF-κB, expression of FasL and triggered FasL-dependent pathway, which also involves caspase-8. Therefore, exposure to mancozeb can lead to induction of apoptosis in CHLs through both mechanisms.
Significance:
The results of study confirm that mancozeb exposure can induce genotoxicity and apoptosis in CHLs, thus pose a potential risk to exposed human population.
Insights
Mancozeb fungicide exposure causes DNA damage and cell death (apoptosis) in human lymphocytes. This study reveals mancozeb
Area of Science:
- Environmental Toxicology
- Cellular and Molecular Toxicology
Background:
- Mancozeb, a widely used dithiocarbamate fungicide, is recognized for its genotoxicity and carcinogenicity in rodent models.
- Limited data exists on the genotoxic effects of mancozeb in human populations.
- Investigating mancozeb's impact on human cells is crucial for risk assessment.
Purpose of the Study:
- To evaluate the genotoxic and pro-apoptotic effects of mancozeb exposure in cultured human lymphocytes (CHLs).
- To elucidate the mechanisms underlying mancozeb-induced cellular damage and apoptosis.
Main Methods:
- Human lymphocytes were isolated from healthy donors.
- Genotoxicity was assessed by quantifying chromosomal aberrations (CAs) and micronuclei (MN) using conventional and flow cytometry.
- Apoptosis and necrosis were differentiated using Annexin-V FITC staining and flow cytometry.
- Reactive oxygen species (ROS) generation and mitochondrial function were analyzed.
Main Results:
- Mancozeb exposure significantly increased the frequency of CAs and MN in CHLs in a dose-dependent manner.
- Mancozeb induced apoptosis via both mitochondria-mediated and FasL-dependent pathways, involving ROS generation, caspase activation, and mitochondrial dysfunction.
- Increased ROS levels were observed, indicating a pro-oxidant effect of mancozeb.
Conclusions:
- Mancozeb exposure demonstrably induces genotoxicity and apoptosis in cultured human lymphocytes.
- The findings suggest a potential health risk to human populations exposed to mancozeb.
- Further research into mancozeb's toxicological profile in humans is warranted.
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